冲击射流加热薄板带的数学模型

N. S. Byalobzheskii, O. A. Evtekhova, I. A. Levitskii
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引用次数: 0

摘要

作者研究了用攻击中性气体射流系统对有限长度截面上的热薄金属移动带的加热强度。本文利用数学建模的方法,通过估算金属带的加热强度,解决了通过攻击中性气体射流来制造运动金属带加热系统的问题。介绍了金属板材热处理的主要方法。本文描述了微分热传导问题及其后续的简化,并考虑了为获得有效的计算算法所做的假设;计算换热系数局部值和平均值所选择的经验关系式;以及各种计算的基本参数。为了进行对比建模,我们考虑了一个20米长的截面,其中温度为500°С的带材被温度为800°С的中性气体加热。结果计算横截面平均温度的依赖的加沙地带的移动速度(范围从0.1 m / s, 2 m / s)在两个值的气体流速(20 m / s和40米/秒),在此基础上,作者得出结论,可接受的加热强度的低速带、和气体流速(在考虑范围)不是一个准备在这个强度显著增加。
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Mathematical model of sheet metal strip heating by attacking jets
The authors investigated the intensity of heating of a moving strip of thermally thin metal on a finite length section by a system of attacking neutral gas jets. The article is devoted to solving the problem of creating a system for heating a strip of moving metal by attacking jets of neutral gas by estimating the intensity of heating a metal strip using mathematical modeling methods. The main options for heat treatment of sheet metal are named. The article describes the differential heat conduction problem and its subsequent simplification, considering the assumptions made to obtain an effective calculation algorithm; the empirical relations selected for calculating local and average values of heat transfer coefficients; and the basic parameters for variant calculations. For comparative modeling, a 20m-long section was considered, where a strip entering with a temperature of 500 °С is heated by neutral gas with temperature of 800 °С. The results of calculating the dependence of average cross-sectional temperature of the strip on its movement speed (in the range from 0.1 m/s to 2 m/s) at two values of the gas flow velocity (20 m/s and 40 m/s) are presented, on the basis of which the authors concluded that acceptable heating intensity is achieved only at low speeds of the strip, and the gas flow rate (in the considered range) is not a reserve for a significant increase in this intensity.
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